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路易斯酸介导合成3-酰基四酰胺酸的密度泛函理论研究

DFT study of the Lewis acid mediated synthesis of 3-acyltetramic acids.

作者信息

Mikula Hannes, Svatunek Dennis, Skrinjar Philipp, Horkel Ernst, Hametner Christian, Fröhlich Johannes

机构信息

Institute of Applied Synthetic Chemistry, Vienna University of Technology, 1060, Vienna, Austria,

出版信息

J Mol Model. 2014 May;20(5):2181. doi: 10.1007/s00894-014-2181-0. Epub 2014 May 3.

Abstract

The synthesis of 3-acyltetramic acids by C-acylation of pyrrolidine-2,4-diones was studied by density functional theory (DFT). DFT was applied to the mycotoxin tenuazonic acid (TeA), an important representative of these bioactive natural compounds. Lewis acid mediated C-acylation in combination with previous pH-neutral domino N-acylation-Wittig cyclization can be used for the efficient preparation of 3-acyltetramic acids. Nevertheless, quite harsh conditions are still required to carry out this synthetic step, leading to unwanted isomerization of stereogenic centers in some cases. In the presented study, the reaction pathway for the C-acetylation of (5S,6S-5-s-butylpyrrolidine-2,4-dione was studied in terms of mechanism, solvent effects, and Lewis acid activation, in order to obtain an appropriate theoretical model for further investigations. Crucial steps were identified that showed rather high activation barriers and rationalized previously reported experimental discoveries. After in silico optimization, aluminum chlorides were found to be promising Lewis acids that promote the C-acylation of pyrrolidine-2,4-diones, whereas calculations performed in various organic solvents showed that the solvent had only a minor effect on the energy profiles of the considered mechanisms. This clearly indicates that further synthetic studies should focus on the Lewis-acidic mediator rather than other reaction parameters. Additionally, given the results obtained for different reaction routes, the stereochemistry of this C-acylation is discussed. It is assumed that the formation of Z-configured TeA is favored, in good agreement with our previous studies.

摘要

通过密度泛函理论(DFT)研究了吡咯烷 - 2,4 - 二酮的C - 酰化反应合成3 - 酰基四酰胺酸。DFT被应用于霉菌毒素细交链孢菌酮酸(TeA),这些生物活性天然化合物的一个重要代表。路易斯酸介导的C - 酰化反应与先前的pH中性多米诺N - 酰化 - 维蒂希环化反应相结合,可用于高效制备3 - 酰基四酰胺酸。然而,仍需要相当苛刻的条件来进行这一合成步骤,在某些情况下会导致手性中心出现不需要的异构化。在本研究中,从机理、溶剂效应和路易斯酸活化方面研究了(5S,6S)-5 - 仲丁基吡咯烷 - 2,4 - 二酮的C - 乙酰化反应途径,以便获得一个合适的理论模型用于进一步研究。确定了关键步骤,这些步骤显示出相当高的活化能垒,并合理解释了先前报道的实验发现。经过计算机模拟优化后,发现氯化铝是促进吡咯烷 - 2,4 - 二酮C - 酰化反应的有前景的路易斯酸,而在各种有机溶剂中进行的计算表明,溶剂对所考虑机理的能量分布只有微小影响。这清楚地表明,进一步的合成研究应集中在路易斯酸介质而非其他反应参数上。此外,根据不同反应路线获得的结果,讨论了这种C - 酰化反应的立体化学。假定Z - 构型的TeA的形成是有利的,这与我们先前的研究结果高度一致。

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